具有数据压缩的无线电遥测系统中关联存储装置特性的测定

B. Yesmagambetov, Akhmetbek Mussabekov, N. Alymov, A. Apsemetov, M. Balabekova, K.G. Kayumov, Kuttybek Arystanbayev, A. Imanbayeva
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引用次数: 1

摘要

在航天器无线电遥测系统中,数据处理采用了多种数据压缩方法。在使用任何压缩方法时,压缩得到的数据都是随机形成的,在无线电通信信道上的传输应随时间均匀进行。这就需要使用特殊的缓冲存储设备。此外,现有的航天器无线电遥测系统需要按某些特征对压缩数据流进行分组。这导致需要按流对压缩数据进行排序。因此,在这样的系统中使用关联缓冲存储设备是明智的。本文致力于分析在关联存储设备(ASD)的输出端生成的压缩数据的输出流的形成过程。由于压缩数据的输出流是随机的,因此使用队列论和概率论进行分析。同时,联想记忆被表示为一个队列系统。ASD中的写和读可以解释为队列系统中的服务订单。分析的目的是确定联想存储设备(ASD)的特征。这些特征是ASD中的队列长度M{N}, ASD中队列长度D{N}的偏差,ASD中给定体积N的压缩数据的概率pn(包括清空概率和内存溢出概率)。所得结果可用于航天器遥测系统压缩装置设计中联想存储装置(ASD)存储容量的选择,具有重要的实际意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of Characteristics of Associative Storage Devices in Radio Telemetry Systems with Data Compression
In the radio telemetry systems of spacecraft, various data compression methods are used for data processing. When using any compression methods, the data obtained as a result of compression is formed randomly, and transmission over radio communication channels should be carried out evenly over time. This leads to the need to use special buffer storage devices. In addition, existing spacecraft radio telemetry systems require grouping of compressed data streams by certain characteristics. This leads to the need to sort compressed data by streams. Therefore, it is advisable to use associative buffer storage devices in such systems. This article is devoted to the analysis of the processes of formation of output streams of compressed data generated at the output of an associative storage device (ASD). Since the output stream of compressed data is random, queue theory and probability theory are used for analysis. At the same time, associative memory is represented as a queue system. Writing and reading in an ASD can be interpreted as servicing orders in a queue system. The purpose of the analysis is to determine the characteristics of an associative storage device (ASD). Such characteristics are the queue length M{N} in the ASD, the deviation of the queue length D{N} in the ASD and the probability pn of a given volume n of compressed data in the ASD (including the probability of emptying and the probability of memory overflow). The results obtained are of great practical importance, since they can be used to select the amount of memory of an associative storage device (ASD) when designing compression devices for telemetry systems of spacecraft.
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